Burr Brown Corporation ADS774KE, ADS774JU, ADS774JP, ADS774JE, ADS774KU, ADS774KP Datasheet
Specifications and Main Features
Frequently Asked Questions
User Manual
®
ADS774
ADS774
ADS774
ADS774
Microprocessor-Compatible Sampling
CMOS ANALOG-to-DIGITAL CONVERTER
FEATURES
● REPLACES ADC574, ADC674 AND ADC774
FOR NEW DESIGNS
● COMPLETE SAMPLING A/D WITH
REFERENCE, CLOCK AND
MICROPROCESSOR INTERFACE
● FAST ACQUISITION AND CONVERSION:
8.5
µs max OVER TEMPERATURE
● ELIMINATES EXTERNAL SAMPLE/HOLD
IN MOST APPLICATIONS
● GUARANTEED AC AND DC PERFOR-
MANCE
● SINGLE +5V SUPPLY OPERATION
● LOW POWER: 120mW max
● PACKAGE OPTIONS: 0.6" and 0.3" DIPs,
SOIC
DESCRIPTION
The ADS774 is a 12-bit successive approximation
analog-to-digital converter using an innovative
capacitor array (CDAC) implemented in low-power
CMOS technology. This is a drop-in replacement for
ADC574, ADC674, and ADC774 models in most
applications, with internal sampling, much lower power
consumption, and the ability to operate from a single
+5V supply.
The ADS774 is complete with internal clock, microprocessor interface, three-state outputs, and internal
scaling resistors for input ranges of 0V to +10V, 0V to
+20V, ±5V, or ±10V. The maximum throughput time
is 8.5µs over the full operating temperature range,
including both acquisition and conversion.
Complete user control over the internal sampling function facilitates elimination of external sample/hold
amplifiers in most existing designs.
The ADS774 requires +5V, with –15V optional. No
+15V supply is required. Available packages include
0.3" or 0.6" wide 28-pin plastic DIP and 28-pin SOICs.
Control
Inputs
Bipolar Offset
20V Range
10V Range
2.5V Reference
Input
2.5V Reference
Output
International Airport Industrial Park • Mailing Address: PO Box 11400, Tucson, AZ 85734 • Street Address: 6730 S. Tucson Blvd., Tucson, AZ 85706 • Tel: (520) 746-1111 • Twx: 910-952-1111
Leakage, Data Bits Only, High-Z State–50.1+5✻✻✻µA
Capacitance5✻pF
INTERNAL REFERENCE VOLTAGE
Voltage+2.4+2.5+2.6✻✻✻V
Source Current Available for External Loads0.5✻mA
POWER SUPPLY REQUIREMENTS
Voltage: V
Current: I
I
Power Dissipation (T
(V
TEMPERATURE RANGE
Specification0+70✻✻°C
Operating:–40+85✻✻°C
Storage Temperature Range–65+150✻✻°C
✻ Same specification as ADS774JE, JP, JU.
NOTES: (1) With fixed 50Ω resistor from REF OUT to REF IN. This parameter is also adjustable to zero at +25°C. (2) FS in this specification table means Full Scale
Range. That is, for a ±10V input range, FS means 20V; for a 0 to +10V range, FS means 10V. (3) Maximum error at T
+5V, which is the Control Mode. See the section "S/H Control Mode and ADC774 Emulation Mode." (5) Using internal reference. (6) This is worst case change
in accuracy from accuracy with a +5V supply. (7) V
typ; when V
to T
MIN
, VDD = +5V, VEE = –15V to +5V, sampling frequency of 117kHz, fIN = 10kHz; unless otherwise specified.
MAX
ADS774JE, JP, JUADS774KE, KP, KU
- DB0, STATUS)
11
Bipolar Bipolar Offset Binary (BOB)
= 1.6mA)+0.4✻V
SINK
Logic 1 (I
(7)
EE
V
DD
(7)
(VEE = –15V)–1✻mA
EE
DD
= 0V to +5V)75120✻✻mW
EE
= 0V, IEE = ±5µA typ; when VEE = +5V, IEE = +167µA typ.
EE
= 500µA)+2.4✻V
SOURCE
–16.5V
+4.5+5.5✻✻V
DD
✻✻V
+15+24✻✻mA
to T
MAX
)
and T
MIN
MAX
is optional, and is only used to set the mode for the internal sample/hold. When VEE = –15V, IEE = –1mA
EE
MIN
. (4) Based on using VEE =
The information provided herein is believed to be reliable; however, BURR-BROWN assumes no responsibility for inaccuracies or omissions. BURR-BROWN assumes
no responsibility for the use of this information, and all use of such information shall be entirely at the user’s own risk. Prices and specifications are subject to change
without notice. No patent rights or licenses to any of the circuits described herein are implied or granted to any third party. BURR-BROWN does not authorize or warrant
any BURR-BROWN product for use in life support devices and/or systems.
ADS7743
®
ABSOLUTE MAXIMUM RATINGS
VEE to Digital Common....................................................... +VDD to –16.5V
V
to Digital Common .............................................................. 0V to +7V
DD
Analog Common to Digital Common.................................................... ±1V
Control Inputs (CE, CS, A
to Digital Common .................................................. –0.5V to V
Analog Inputs (Ref In, Bipolar Offset, 10V
to Analog Common ...................................................................... ±16.5V
20V
to Analog Common .................................................................. ±24V
IN
Ref Out.......................................................... Indefinite Short to Common,
Max Junction Temperature ............................................................ +165°C
Power Dissipation ........................................................................ 1000mW
Lead Temperature (soldering,10s)................................................. +300°C
This integrated circuit can be damaged by ESD. Burr-Brown
recommends that all integrated circuits be handled with
appropriate precautions. Failure to observe proper handling
and installation procedures can cause damage.
ESD damage can range from subtle performance degrada-
DD
tion to complete device failure. Precision integrated circuits
may be more susceptible to damage because very small
parametric changes could cause the device not to meet its
published specifications.
ELECTROSTATIC
DISCHARGE SENSITIVITY
PACKAGE/ORDERING INFORMATION
PRODUCTSINAD
ADS774JE68dB0°C to +70°C±1LSB28-Pin 0.3" Plastic DIP246
ADS774KE70dB0°C to +70°C±1/2LSB28-Pin 0.3" Plastic DIP246
ADS774JP68dB0°C to +70°C±1LSB28-Pin 0.6" Plastic DIP215
ADS774KP70dB0°C to +70°C±1/2LSB28-Pin 0.6" Plastic DIP215
ADS774JU68dB0°C to +70°C±1LSB28-Lead SOIC217
ADS774KU70dB0°C to +70°C±1/2LSB28-Lead SOIC217
NOTES: (1) SINAD is Signal-to-(Noise + Distortion) expressed in dB. (2) For detailed drawing and dimension table, please see end of data sheet, or Appendix C of BurrBrown IC Data Book.
(1)
TEMPERATURELINEARITYPACKAGE DRAWING
RANGEERRORPACKAGENUMBER
(2)
CONNECTION DIAGRAM
+5VDC Supply
(V )
DD
12/8
CS
A
R/C
CE
NC*
2.5V Ref
Out
Analog
Common
2.5V Ref
In
V
EE
Bipolar
Offset
10V Range
20V Range
1
–
2
Control
3
Logic
4
O
–
5
6
7
8
9
10
11
12
13
14
Reference
*Not Internally Connected
2.5V
Power-Up Reset
Clock
CDAC
12 Bits
28
STATUS
27
DB11 (MSB)
26
DB10
Nibble A
25
DB9
24
DB8
23
DB7
22
21
Nibble BNibble C
20
19
18
17
16
15
DB6
DB5
DB4
DB3
DB2
DB1
DB0 (LSB)
Digital
Common
12
Bits
Succesive Approximation Register
Three-State Buffers and Control
–
+
®
ADS7744
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